dynamic response - vertaling naar russisch
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dynamic response - vertaling naar russisch

DEVICE THAT REDUCES THE BODY ROLL OF A VEHICLE
Antiroll bar; Dynamic Drive; Anti-sway bar; Anti roll bar; Sway bars; Stabilizer bar; Stabilizer bars; Anti-sway bars; Antisway bar; Antisway bars; Antisway; Anti-sway; Anti-roll bars; Antiroll bars; Anti-roll; Antiroll; Stabiliser bar; Swaybar; Sway bar; ACTIVE CURVE SYSTEM; Active Roll Stabilization; Active anti-roll bar; PDCC; Active roll stabilisation; Adaptive Drive; Dynamic Response; Active Roll Stabilisation; Anti Roll Bar; Porsche Dynamic Chassis Control
  • SUV]], with anti roll bars removed, shows how one wheel can be much lower than the opposite side, as the body rolls (tilts) more without anti roll bars.
  • Schematic of a front axle highlighted to show anti-roll bar.
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  • Diagram of two types of adjustable antiroll bars.
  • Two front-wheel springs, with the wheels removed. Opposite suspension arms are connected to the central anti-roll bar assembly.

dynamic response         
  • Two degrees of freedom model
  • Free vibration with 0.1 and 0.3 damping ratio
  • Forced Vibration Response
  • Frequency response model
  • Simple mass spring model
  • Mass–spring–damper model
  • Simple harmonic motion of the mass–spring system
  • How a 1&nbsp;Hz square wave can be represented as a summation of sine waves (harmonics) and the corresponding frequency spectrum. Click and go to full resolution for an animation
MECHANICAL PHENOMENON WHEREBY OSCILLATIONS OCCUR ABOUT AN EQUILIBRIUM POINT; PRECISELY USED TO DESCRIBE MECHANICAL OSCILLATION
Vibrations; Angular vibration; Parallel vibration; Mechanical vibration; Forced vibration; Dynamic response; Damped vibration; Vibration analysis; Vibrations analysis; Vibrate; Vibration testing

строительное дело

динамическая характеристика

dynamic response         
  • Two degrees of freedom model
  • Free vibration with 0.1 and 0.3 damping ratio
  • Forced Vibration Response
  • Frequency response model
  • Simple mass spring model
  • Mass–spring–damper model
  • Simple harmonic motion of the mass–spring system
  • How a 1&nbsp;Hz square wave can be represented as a summation of sine waves (harmonics) and the corresponding frequency spectrum. Click and go to full resolution for an animation
MECHANICAL PHENOMENON WHEREBY OSCILLATIONS OCCUR ABOUT AN EQUILIBRIUM POINT; PRECISELY USED TO DESCRIBE MECHANICAL OSCILLATION
Vibrations; Angular vibration; Parallel vibration; Mechanical vibration; Forced vibration; Dynamic response; Damped vibration; Vibration analysis; Vibrations analysis; Vibrate; Vibration testing
динамическая характеристика
vibration         
  • Two degrees of freedom model
  • Free vibration with 0.1 and 0.3 damping ratio
  • Forced Vibration Response
  • Frequency response model
  • Simple mass spring model
  • Mass–spring–damper model
  • Simple harmonic motion of the mass–spring system
  • How a 1&nbsp;Hz square wave can be represented as a summation of sine waves (harmonics) and the corresponding frequency spectrum. Click and go to full resolution for an animation
MECHANICAL PHENOMENON WHEREBY OSCILLATIONS OCCUR ABOUT AN EQUILIBRIUM POINT; PRECISELY USED TO DESCRIBE MECHANICAL OSCILLATION
Vibrations; Angular vibration; Parallel vibration; Mechanical vibration; Forced vibration; Dynamic response; Damped vibration; Vibration analysis; Vibrations analysis; Vibrate; Vibration testing
1) вибрация, колебание
2) осевой раскат (краски)

Definitie

dynamic analysis
<programming> Evaluation of a program based on its execution. Dynamic analysis relies on executing a piece of software with selected test data. (1996-05-13)

Wikipedia

Anti-roll bar

An anti-roll bar (roll bar, anti-sway bar, sway bar, stabilizer bar) is a part of many automobile suspensions that helps reduce the body roll of a vehicle during fast cornering or over road irregularities. It connects opposite (left/right) wheels together through short lever arms linked by a torsion spring. An anti-roll bar increases the suspension's roll stiffness—its resistance to roll in turns—independent of its spring rate in the vertical direction. The first stabilizer bar patent was awarded to Canadian inventor Stephen Coleman of Fredericton, New Brunswick on April 22, 1919.

Anti-roll bars were unusual on pre-WW2 cars due to the generally much stiffer suspension and acceptance of body roll. From the 1950s on, however, production cars were more commonly fitted with anti-roll bars, especially those vehicles with softer coil spring suspension.

Vertaling van &#39dynamic response&#39 naar Russisch